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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Performance of different separation methods interfaced in the same MS-reflection TOF detector: A comparison of performance between CE versus HPLC for biomarker analysis
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Performance of different separation methods interfaced in the same MS-reflection TOF detector: A comparison of performance between CE versus HPLC for biomarker analysis

机译:在同一个MS反射TOF检测器中使用不同分离方法的性能:CE和HPLC在生物标志物分析中的性能比较

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摘要

One of the aims in the field of proteomics is the identification of a protein or polypeptide, or a range of these compounds, that could provide pre-symptomatic indication of the onset of a disease. A number of analytical techniques have been employed to try and achieve this end. These techniques have been applied to the complete range of body fluids and tissues that are readily available from clinical studies. Of these sample sources, the urinary low molecular weight peptidome has been shown to reflect changes in the health status of the individual. The alterations that occur in the polypeptide make up of urine, which reflect changes in biological status, are known as biomarkers. To be able to determine these changes no single technique has emerged that can cope with detecting the large number of peptides present and quantifying them over the wide concentration range they exist in. In this investigation, we made use of a single reflectron time of flight (RTOF)-MS analyser to which we first connected a CE system and then a nanoflow HPLC. Two pooled male and female standard urine samples were compared on these systems. Both techniques had similar results in terms of number of peptides detected and the mass range the peptides were detected over. The major differences in terms of biomarker research were the ability in CE to calibrate the migration time of the peptides to allow comparison between samples. In addition, CE was shown not to suffer from carry over from previous samples as was seen in the LC analysis.
机译:蛋白质组学领域的目标之一是鉴定可提供症状发作前症状指示的蛋白质或多肽或一系列此类化合物。已经采用了许多分析技术来尝试达到这一目的。这些技术已应用于临床研究中容易获得的全部体液和组织。在这些样品来源中,尿低分子量肽组已显示出可反映个体健康状况的变化。多肽组成的尿液中的变化反映了生物状态的变化,被称为生物标记。为了能够确定这些变化,目前还没有一种技术可以检测存在的大量肽并在存在的宽浓度范围内对其进行定量。在这项研究中,我们使用了单个反射电子飞行时间( RTOF-MS分析仪,我们首先连接了CE系统,然后连接了纳流HPLC。在这些系统上比较了两个合并的男性和女性标准尿液样本。就检测到的肽的数量和检测肽的质量范围而言,两种技术均具有相似的结果。在生物标志物研究方面的主要差异是CE校准肽迁移时间的能力,以允许在样品之间进行比较。此外,如LC分析所示,CE被证明不会受先前样品的影响。

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